Buch V
The Fritz Haber Institute for Molecular Dynamics, The Hebrew University, Jerusalem 91904, Israel.
J Phys Chem B. 2005 Sep 29;109(38):17771-4. doi: 10.1021/jp052819a.
Molecular dynamics simulations are used to investigate typical coordination shells of molecules in the liquid water surface, for two potential energy surfaces. The major undercoordinated species found in the surface include three-coordinated H2O with either a dangling-H or a dangling-O atom and two-coordinated H2O with one hydrogen bond via H, and another via O. Vibrational signatures of the different coordinations are calculated. The 3400 cm(-1) band in the surface sum frequency generation (SFG) spectrum is assigned to four-coordinated molecules within the surface layer. The low-frequency wing of the OH-stretch band, near 3200 cm(-1) in the SFG spectrum, is proposed to be due to collective excitations of a relatively small number of intermolecularly coupled O-H bond vibrations.
分子动力学模拟用于研究两种势能面上液态水表面分子的典型配位层。在表面发现的主要低配位物种包括具有悬空氢或悬空氧原子的三配位H₂O以及通过H形成一个氢键且通过O形成另一个氢键的二配位H₂O。计算了不同配位的振动特征。表面和频振动光谱(SFG)中3400 cm⁻¹的谱带归属于表面层内的四配位分子。SFG光谱中靠近3200 cm⁻¹的OH伸缩带低频边被认为是由于相对少量分子间耦合的O-H键振动的集体激发所致。